Lio Yi-Ching, Schild David, Brenneman Mark A, Redpath J Leslie, Chen David J
Life Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA.
J Biol Chem. 2004 Oct 1;279(40):42313-20. doi: 10.1074/jbc.M405212200. Epub 2004 Jul 29.
The highly conserved Rad51 protein plays an essential role in repairing DNA damage through homologous recombination. In vertebrates, five Rad51 paralogs (Rad51B, Rad51C, Rad51D, XRCC2, and XRCC3) are expressed in mitotically growing cells and are thought to play mediating roles in homologous recombination, although their precise functions remain unclear. Among the five paralogs, Rad51C was found to be a central component present in two complexes, Rad51C-XRCC3 and Rad51B-Rad51C-Rad51D-XRCC2. We have shown previously that the human Rad51C protein exhibits three biochemical activities, including DNA binding, ATPase, and DNA duplex separation. Here we report the use of RNA interference to deplete expression of Rad51C protein in human HT1080 and HeLa cells. In HT1080 cells, depletion of Rad51C by small interfering RNA caused a significant reduction of frequency in homologous recombination. The level of XRCC3 protein was also sharply reduced in Rad51C-depleted HeLa cells, suggesting that XRCC3 is dependent for its stability upon heterodimerization with Rad51C. In addition, Rad51C-depleted HeLa cells showed hypersensitivity to the DNA-cross-linking agent mitomycin C and moderately increased sensitivity to ionizing radiation. Importantly, the radiosensitivity of Rad51C-deficient HeLa cells was evident in S and G(2)/M phases of the cell cycle but not in G(1) phase. Together, these results provide direct cellular evidence for the function of human Rad51C in homologous recombinational repair.
高度保守的Rad51蛋白在通过同源重组修复DNA损伤过程中发挥着至关重要的作用。在脊椎动物中,五个Rad51旁系同源物(Rad51B、Rad51C、Rad51D、XRCC2和XRCC3)在有丝分裂生长的细胞中表达,尽管它们的确切功能尚不清楚,但被认为在同源重组中起介导作用。在这五个旁系同源物中,发现Rad51C是存在于两个复合物Rad51C-XRCC3和Rad51B-Rad51C-Rad51D-XRCC2中的核心成分。我们之前已经表明,人类Rad51C蛋白具有三种生化活性,包括DNA结合、ATP酶和DNA双链分离。在此我们报告利用RNA干扰来耗尽人类HT1080和HeLa细胞中Rad51C蛋白的表达。在HT1080细胞中,小干扰RNA耗尽Rad51C导致同源重组频率显著降低。在Rad51C耗尽的HeLa细胞中,XRCC3蛋白水平也急剧降低,这表明XRCC3的稳定性依赖于与Rad51C的异源二聚化。此外,Rad51C耗尽的HeLa细胞对DNA交联剂丝裂霉素C表现出超敏反应,对电离辐射的敏感性适度增加。重要的是,Rad51C缺陷的HeLa细胞的放射敏感性在细胞周期的S期和G(2)/M期明显,但在G(1)期不明显。总之,这些结果为人类Rad51C在同源重组修复中的功能提供了直接的细胞证据。